Department of Neurology and Neurosurgery, Centre for Research in Neuroscience, Research Institute of the McGill University Health Center, Montréal, Quebec H3G 1A4, Canada.
Department of Neurology and Neurosurgery, Centre for Research in Neuroscience, Research Institute of the McGill University Health Center, Montréal, Quebec H3G 1A4, Canada
J Neurosci. 2024 Apr 3;44(14):e2278222024. doi: 10.1523/JNEUROSCI.2278-22.2024.
Tumor necrosis factor α (TNF) mediates homeostatic synaptic plasticity (HSP) in response to chronic activity blockade, and prior work has established that it is released from glia. Here we demonstrate that astrocytes are the necessary source of TNF during HSP. Hippocampal cultures from rats of both sexes depleted of microglia still will increase TNF levels following activity deprivation and still express TTX-driven HSP. Slice cultures from mice of either sex with a conditional deletion of TNF from microglia also express HSP, but critically, slice cultures with a conditional deletion of TNF from astrocytes do not. In astrocytes, glutamate signaling is sufficient to reduce NFκB signaling and TNF mRNA levels. Further, chronic TTX treatment increases TNF in an NFκB-dependent manner, although NFκB signaling is dispensable for the neuronal response to TTX-driven HSP. Thus, astrocytes can sense neuronal activity through glutamate spillover and increase TNF production when activity falls, to drive HSP through the production of TNF.
肿瘤坏死因子 α(TNF)介导了针对慢性活动阻断的稳态突触可塑性(HSP),先前的工作已经确定它是由神经胶质细胞释放的。在这里,我们证明在 HSP 期间,星形胶质细胞是 TNF 的必要来源。从小鼠海马培养物中去除小胶质细胞后,其 TNF 水平仍会在活动剥夺后增加,并且仍会表达 TTX 驱动的 HSP。从小鼠海马培养物中从小胶质细胞条件性缺失 TNF 的切片培养物也表达 HSP,但关键是,从小胶质细胞条件性缺失 TNF 的星形胶质细胞切片培养物不表达 HSP。在星形胶质细胞中,谷氨酸信号足以降低 NFκB 信号和 TNF mRNA 水平。此外,慢性 TTX 处理以 NFκB 依赖的方式增加 TNF,尽管 NFκB 信号对于神经元对 TTX 驱动的 HSP 的反应是可有可无的。因此,星形胶质细胞可以通过谷氨酸外溢感知神经元活动,并且当活动下降时增加 TNF 产生,以通过产生 TNF 来驱动 HSP。